IP Library Granted Patent US 10,870,859
Granted Patent B2
US 10,870,859 · App. 16/674,698 · Granted Dec 22, 2020

U6 polymerase III promoter and methods of use

Inventors: Zhongsen Li (Hockessin, DE); Zhan-Bin Liu (Clive, IA)
C12N15/8216A01H1/00
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Quick Facts
Patent No.
US 10,870,859
App. No.
16/674,698
Granted
Dec 22, 2020
Kind
B2
Abstract

The disclosure relates to gene expression regulatory sequences from maize, specifically to the promoter of a maize U6 polymerase III gene and fragments thereof and their use in promoting the expression of one or more heterologous nucleic acid fragments in plants. The invention further discloses compositions, polynucleotide constructs, transformed host cells, mutated plants, transgenic plants and seeds containing the recombinant construct with the promoter, and methods for preparing and using the same.

Claims (27)

1. A recombinant DNA construct comprising a promoter nucleotide sequence comprising a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides of SEQ ID NO: 9, operably linked to at least one heterologous sequence, wherein said nucleotide sequence controls the expression of the heterologous sequence, wherein the at least 100 contiguous nucleotides comprise a TATA box, and wherein the nucleotide sequence comprises said TATA box.

2. The recombinant DNA construct of claim 1 , wherein the nucleotide sequence comprises at least 100 contiguous nucleotides of SEQ ID NO: 9, wherein the at least 100 contiguous nucleotides comprise a TATA box, and wherein the nucleotide sequence comprises said TATA box.

3. A vector comprising the recombinant DNA construct of claim 1 .

4. A cell comprising the recombinant DNA construct of claim 1 .

5. The cell of claim 4 , wherein the cell is a plant cell.

6. A transgenic plant comprising the recombinant DNA construct of claim 1 .

7. The transgenic plant of claim 6 , wherein said plant is a monocot plant.

8. The transgenic plant of claim 7 , wherein the plant is a maize plant.

9. A transgenic seed produced by the transgenic plant of claim 7 , wherein the transgenic seed comprises the recombinant DNA construct.

10. The recombinant DNA construct of claim 1 , wherein the at least one heterologous sequence is selected from the group consisting of: a reporter coding sequence, a selection marker, a functional RNA, a disease resistance conferring coding sequence, a herbicide resistance conferring coding sequence, an insect resistance conferring coding sequence, a carbohydrate metabolism coding sequence, a fatty acid metabolism coding sequence, an amino acid metabolism coding sequence, a drought resistance coding sequence, a cold resistance coding sequence, a heat resistance coding sequence, and a salt resistance coding sequence.

11. The recombinant DNA construct of claim 1 , wherein the at least one heterologous sequence encodes a sequence selected from the group consisting of: a reporter protein, a selection marker, a functional RNA, a protein conferring disease resistance, a protein conferring herbicide resistance, a protein conferring insect resistance, a carbohydrate metabolism protein, a fatty acid metabolism protein, an amino acid metabolism protein, a drought resistance protein, a cold resistance protein, a heat resistance protein, and a salt resistance protein.

12. A method of expressing a coding sequence or a functional RNA in a plant comprising:

(a) introducing a recombinant DNA construct into the plant wherein the recombinant DNA construct comprises a promoter nucleotide sequence comprising a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides of SEQ ID NO: 9, operably linked to at least one heterologous sequence, wherein said nucleotide sequence controls the expression of the heterologous sequence, wherein the at least 100 contiguous nucleotides comprise a TATA box, wherein the promoter nucleotide sequence comprises said TATA box, and wherein the at least one heterologous sequence comprises a coding sequence or encodes a functional RNA;

(b) growing the plant of step (a); and

(c) selecting a plant displaying expression of the coding sequence or the functional RNA of the recombinant DNA construct.

13. A method of transgenically altering a plant trait, comprising:

(a) introducing a recombinant DNA construct into the plant, wherein the recombinant DNA construct comprises a promoter nucleotide sequence comprising a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides of SEQ ID NO: 9, operably linked to at least one heterologous sequence, wherein said promoter nucleotide sequence controls the expression of the heterologous sequence, wherein the at least 100 contiguous nucleotides comprise a TATA box, and wherein the promoter nucleotide sequence comprises said TATA box;

(b) growing a fertile, mature plant resulting from step (a); and

(c) selecting a plant expressing the at least one heterologous sequence in at least one plant tissue having the altered trait.

14. The method of claim 13 , wherein the trait is selected from the group consisting of disease resistance, herbicide resistance, insect resistance carbohydrate metabolism, fatty acid metabolism, amino acid metabolism, drought resistance, cold resistance, heat resistance, and salt resistance.

15. A method for increasing expression of at least one heterologous sequence in a plant comprising:

(a) transforming a plant cell with a recombinant DNA construct, wherein the recombinant DNA construct comprises a promoter nucleotide sequence comprising a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides of SEQ ID NO: 9, operably linked to at least one heterologous sequence, wherein said promoter nucleotide sequence controls the expression of the heterologous sequence, wherein the at least 100 contiguous nucleotides comprise a TATA box, wherein the promoter nucleotide sequence comprises said TATA box;

(b) growing fertile mature plants from transformed plant cell of step (a); and

(c) selecting plants containing the transformed plant cell wherein the expression of the heterologous sequence is increased.

16. The method of claim 15 wherein the plant is a maize plant.

17. A plant transformed with a recombinant DNA construct comprising a promoter and a heterologous nucleic acid fragment operably linked to said promoter, wherein said promoter controls expression of said heterologous nucleic acid fragment in a plant cell, and further wherein said promoter comprises a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides SEQ ID NO: 9; wherein the at least 100 contiguous nucleotides comprise a TATA box, and wherein the promoter comprises said TATA box.

18. A recombinant DNA construct comprising a promoter comprising a nucleotide sequence comprising a region of homology of at least 98% sequence identity with at least 100 contiguous nucleotides with SEQ ID NO: 9, wherein the at least 100 contiguous nucleotides comprise a TATA box, wherein the nucleotide sequence comprises said TATA box, wherein said promoter is operably linked to a heterologous nucleic acid fragment, and wherein said heterologous nucleic acid fragment expresses a guide RNA.

Assignments (5)
NUNC PRO TUNC ASSIGNMENT Recorded Nov 29, 2022
From: E.I. DU PONT DE NEMOURS AND COMPANY
To: CORTEVA AGRISCIENCE LLC
Reel/Frame 063141/0155 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: LI, ZHONGSEN; LIU, ZHAN-BIN
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 051343/0293 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: LI, ZHONGSEN; LIU, ZHAN-BIN
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 051343/0478 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: LI, ZHONGSEN; LIU, ZHAN-BIN
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 051343/0533 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: LI, ZHONGSEN; LIU, ZHAN-BIN
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 051343/0589 →
Continuity (6)
Continuation 14913630
Provisional Application 62023239 · Jul 11, 2014
Provisional Application 61937045 · Feb 7, 2014
Provisional Application 61882532 · Sep 25, 2013
Provisional Application 61868706 · Aug 22, 2013
Related Publication 20200063151A1 · Feb 27, 2020
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